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Vasculopathiesbehavioral, chemical, ...
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Vasculopathiesbehavioral, chemical, environmental, and genetic factors /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Vasculopathiesby Marc Thiriet.
Reminder of title:
behavioral, chemical, environmental, and genetic factors /
Author:
Thiriet, Marc.
Published:
Cham :Springer International Publishing :2018.
Description:
xxxiii, 888 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Cardiology.
Online resource:
https://doi.org/10.1007/978-3-319-89315-0
ISBN:
9783319893150$q(electronic bk.)
Vasculopathiesbehavioral, chemical, environmental, and genetic factors /
Thiriet, Marc.
Vasculopathies
behavioral, chemical, environmental, and genetic factors /[electronic resource] :by Marc Thiriet. - Cham :Springer International Publishing :2018. - xxxiii, 888 p. :ill., digital ;24 cm. - Biomathematical and biomechanical modeling of the circulatory and ventilatory systems,v.82193-1682 ;. - Biomathematical and biomechanical modeling of the circulatory and ventilatory systems ;v.2..
Preface -- Cardiovascular Risk Markers -- Hypertension -- Hyperglycemia and Diabetes -- Hyperlipidemias and Obesity -- Behavioral Risk Factors.
This volume presents one of the clinical foundations of vasculopathies: the biological markers and risk factors associated with cardiovascular disease. A detailed biological and clinical framework is provided as a prerequisite for adequate modeling. Chapter 1 presents cardiovascular risk factors and markers, where the search for new criteria is aimed at improving early detection of chronic diseases. The subsequent chapters focus on hypertension, which involves the kidney among other organs as well as many agents, hyperglycemia and diabetes, hyperlipidemias and obesity, and behavior. The last of these risk factors includes altered circadian rhythm, tobacco and alcohol consumption, physical inactivity, and diet. The volumes in this series present all of the data needed at various length scales for a multidisciplinary approach to modeling and simulation of flows in the cardiovascular and ventilatory systems, especially multiscale modeling and coupled simulations. The cardiovascular and respiratory systems are tightly coupled, as their primary function is to supply oxygen to and remove carbon dioxide from the body's cells. Because physiological conduits have deformable and reactive walls, macroscopic flow behavior and prediction must be coupled to nano- and microscopic events in a corrector scheme of regulated mechanisms. Therefore, investigation of flows of blood and air in anatomical conduits requires an understanding of the biology, chemistry, and physics of these systems together with the mathematical tools to describe their functioning in quantitative terms.
ISBN: 9783319893150$q(electronic bk.)
Standard No.: 10.1007/978-3-319-89315-0doiSubjects--Topical Terms:
273804
Cardiology.
LC Class. No.: RC691 / .T457 2018
Dewey Class. No.: 616.13
Vasculopathiesbehavioral, chemical, environmental, and genetic factors /
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This volume presents one of the clinical foundations of vasculopathies: the biological markers and risk factors associated with cardiovascular disease. A detailed biological and clinical framework is provided as a prerequisite for adequate modeling. Chapter 1 presents cardiovascular risk factors and markers, where the search for new criteria is aimed at improving early detection of chronic diseases. The subsequent chapters focus on hypertension, which involves the kidney among other organs as well as many agents, hyperglycemia and diabetes, hyperlipidemias and obesity, and behavior. The last of these risk factors includes altered circadian rhythm, tobacco and alcohol consumption, physical inactivity, and diet. The volumes in this series present all of the data needed at various length scales for a multidisciplinary approach to modeling and simulation of flows in the cardiovascular and ventilatory systems, especially multiscale modeling and coupled simulations. The cardiovascular and respiratory systems are tightly coupled, as their primary function is to supply oxygen to and remove carbon dioxide from the body's cells. Because physiological conduits have deformable and reactive walls, macroscopic flow behavior and prediction must be coupled to nano- and microscopic events in a corrector scheme of regulated mechanisms. Therefore, investigation of flows of blood and air in anatomical conduits requires an understanding of the biology, chemistry, and physics of these systems together with the mathematical tools to describe their functioning in quantitative terms.
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based on 0 review(s)
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EB RC691 T445 2018 2018
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https://doi.org/10.1007/978-3-319-89315-0
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